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首页> 外文期刊>Basic & clinical pharmacology & toxicology. >Lipid Peroxidation and Glutathione Levels in Porcine Kidney PK15 Cells after Individual and Combined Treatment with Fumonisin B(1), Beauvericin and Ochratoxin A.
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Lipid Peroxidation and Glutathione Levels in Porcine Kidney PK15 Cells after Individual and Combined Treatment with Fumonisin B(1), Beauvericin and Ochratoxin A.

机译:伏马毒素B(1),白霉素和O曲毒素A单独和联合处理后,猪肾脏PK15细胞的脂质过氧化和谷胱甘肽水平。

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摘要

Individual and combined effects of the mycotoxins fumonisin B(1), beauvericin and ochratoxin A on cell viability, lipid peroxidation (TBARS) and intracellular glutathione (GSH) were studied on porcine kidney epithelial cells (PK15). Cells were treated with 0.05, 0.5 and 5 microg/ml of each mycotoxin or the combinations of two or all three applied in equal concentrations for 24 and 48 hr. Changes in cell viability, GSH and TBARS levels showed that the cytotoxic effects of these mycotoxins were concentration- and time-dependent. After 24 hr, cell viability was significantly decreased by the exposure to 5 microg/ml of fumonisin B(1) (25%), beauvericin (30%) and ochratoxin A (35%), as compared to controls. Only ochratoxin A (5 microg/ml) increased TBARS (56%), with further significant increase (85%) after 48 hr exposure. Fumonisin B(1) and beauvericin significantly increased TBARS (57% and 80%, respectively) only when the highest dose was applied for 48 hr. After 24 hr, GSH was significantly decreased (18%) by ochratoxin A (0.05 microg/ml), whereas fumonisin B(1) and beauvericin significantly decreased GSH at the concentration of 0.5 microg/ml. Combined treatment with fumonisin B(1), beauvericin and ochratoxin A resulted mostly in additive effects especially after a 24-hr exposure, although synergistic as well as antagonistic interactions could not be excluded depending on toxin concentrations and time of exposure. This is the first report on beauvericin-induced effects on lipid peroxidation and GSH in animal cells.
机译:在猪肾上皮细胞(PK15)上研究了真菌毒素伏马毒素B(1),博韦霉素和曲霉毒素A对细胞活力,脂质过氧化(TBARS)和细胞内谷胱甘肽(GSH)的个体和联合作用。用0.05、0.5和5微克/毫升的每种霉菌毒素或以相同浓度施加的两种或三种的组合处理细胞24和48小时。细胞活力,GSH和TBARS水平的变化表明,这些真菌毒素的细胞毒性作用是浓度和时间依赖性的。 24小时后,与对照相比,通过暴露于5微克/毫升的伏马菌素B(1)(25%),博韦霉素(30%)和曲霉毒素A(35%),细胞活力显着降低。暴露48小时后,仅曲霉毒素A(5微克/毫升)增加TBARS(56%),并进一步显着增加(85%)。伏马菌素B(1)和beauvericin仅在最高剂量应用48小时时才显着增加TBARS(分别为57%和80%)。 24小时后,曲霉毒素A(0.05 microg / ml)使GSH显着降低(18%),而伏马毒素B(1)和beauvericin在0.5 microg / ml的浓度下显着降低GSH。伏马菌素B(1),beauvericin和曲霉毒素A的联合治疗主要产生累加效应,尤其是在暴露24小时后,尽管根据毒素浓度和暴露时间不能排除协同作用和拮抗作用。这是第一个关于beauvericin诱导的对动物细胞脂质过氧化和GSH影响的报道。

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